Rizvi T A, Murphy A Z, Ennis M, Behbehani M M, Shipley M T
Department of Anatomy, University of Maryland School of Medicine, Baltimore 21201, USA.
J Neurosci. 1996 Jan;16(1):333-44. doi: 10.1523/JNEUROSCI.16-01-00333.1996.
We have shown recently that the medial preoptic area (MPO) robustly innervates discrete columns along the rostrocaudal axis of the midbrain periaqueductal gray (PAG). However, the location of PAG neurons responsive to MPO activation is not known. Anterograde tract tracing was used in combination with Fos immunohistochemistry to characterize the MPO --> PAG pathway anatomically and functionally within the same animal. Focal electrical or chemical stimulation of MPO in anesthetized rats induced extensive Fos expression within the PAG compared with sham controls. Fos-positive neurons were organized as 2-3 longitudinal columns. The organization and location of these columns overlapped remarkably well with the distribution of fibers and terminals in PAG labeled by Phaseolus vulgaris leucoagglutinin (PHA-L) injected into the same MPO stimulation site. This indicates that MPO inputs may terminate on the soma or proximal dendrites of neurons exhibiting elevated Fos. A second series of experiments investigated whether MPO stimulation excited PAG neurons with descending projections to the medulla. Retrograde labelling of PAG neurons projecting to the medial and lateral regions of the rostroventral medulla (RVM) was combined with MPO-induced Fos expression. The results showed that a substantial population (37-53%) of Fos-positive PAG neurons projected to the ventral medulla. This indicates that MPO stimulation engages PAG-medullary output neurons. Taken together, these results suggest that the MPO --> Pag --> RVM projection constitutes a functional pathway. This circuit may coordinately regulate neuroendocrine, motor, and autonomic adjustments necessary for the elaboration of sexual behaviors.
我们最近发现,内侧视前区(MPO)沿着中脑导水管周围灰质(PAG)的头尾轴有力地支配离散的柱。然而,对MPO激活有反应的PAG神经元的位置尚不清楚。在同一只动物中,将顺行束路追踪与Fos免疫组织化学结合使用,以从解剖学和功能上表征MPO→PAG通路。与假手术对照组相比,在麻醉大鼠中对MPO进行局部电刺激或化学刺激可诱导PAG内广泛的Fos表达。Fos阳性神经元组织成2 - 3个纵向柱。这些柱的组织和位置与注入相同MPO刺激部位的菜豆白细胞凝集素(PHA-L)标记的PAG中纤维和终末的分布非常吻合。这表明MPO输入可能终止于Fos表达升高的神经元的胞体或近端树突上。第二系列实验研究了MPO刺激是否会兴奋向延髓发出下行投射的PAG神经元。将投射到延髓头端腹侧(RVM)内侧和外侧区域的PAG神经元的逆行标记与MPO诱导的Fos表达相结合。结果表明,相当一部分(37 - 53%)Fos阳性PAG神经元投射到腹侧延髓。这表明MPO刺激激活了PAG - 延髓输出神经元。综上所述,这些结果表明MPO→PAG→RVM投射构成了一条功能通路。该回路可能协调调节性行为产生所需的神经内分泌、运动和自主调节。